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* |
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* $Id$ |
* $Id: gpspev.F,v 3.9 2006/06/30 15:38:16 pam-ba Exp $ |
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* |
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* $Log: gpspev.F,v $ |
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* Revision 3.9 2006/06/30 15:38:16 pam-ba |
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* S22 and S12 heights positioned in GPAMELA at the nominal heights in PAMELA (see document: Main geometrical parameters of the PAMELA sub-detectors, 20 December 2005) |
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* |
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* Revision 3.8 2006/05/02 12:02:43 bottai |
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* micrometric adjustment of spe geometry |
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* |
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* Revision 3.7 2005/12/16 10:20:23 cafagna |
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* Bug fixed in the new update |
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* |
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* Revision 3.6 2005/12/16 09:13:59 cafagna |
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* New small valume added to the tracker frame |
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* |
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* Revision 3.5 2005/12/13 10:31:29 pam-ba |
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* added a new volume, TPGI, in the spectrometer |
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* |
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* Revision 3.4 2005/12/05 12:15:21 pam-ba |
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* new spectrometer geometry and internal magnetic field |
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* |
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* Revision 3.3 2005/07/25 11:53:21 cafagna |
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* Several updates. See history for details |
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* |
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* Revision 3.2 2005/06/21 02:42:27 cafagna |
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* Major modification to the geometry and to the random number chain |
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* |
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* Revision 3.1.1.1 2002/07/11 16:02:14 cafagna |
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* First GPAMELA release on CVS |
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* |
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* $Log$ |
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* |
* |
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*CMZ : 2.01/00 05/04/2000 14.35.18 by Marialuigia Ambriola |
*CMZ : 2.01/00 05/04/2000 14.35.18 by Marialuigia Ambriola |
34 |
*CMZ : 2.00/00 03/03/2000 15.39.06 by Francesco Cafagna |
*CMZ : 2.00/00 03/03/2000 15.39.06 by Francesco Cafagna |
54 |
NMED= MN2 |
NMED= MN2 |
55 |
CALL GSVOLU('SPEB','BOX ',NMED,SPEB, 3,IVOLU) |
CALL GSVOLU('SPEB','BOX ',NMED,SPEB, 3,IVOLU) |
56 |
* |
* |
57 |
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* Define the MGFR volume |
58 |
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* |
59 |
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NMED= MAL |
60 |
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CALL GSVOLU('MGFR','BOX ',NMED,MGFR, 3,IVOLU) |
61 |
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* |
62 |
* Define the MGPL volume |
* Define the MGPL volume |
63 |
* |
* |
64 |
NMED= MMAG |
NMED= MMAG |
73 |
* |
* |
74 |
NMED= MAL |
NMED= MAL |
75 |
CALL GSVOLU('TRPB','BOX ',NMED,TRPB, 3,IVOLU) |
CALL GSVOLU('TRPB','BOX ',NMED,TRPB, 3,IVOLU) |
76 |
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***** |
77 |
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cC ml 20/04/05: |
78 |
* |
* |
79 |
* Define the TRPL volume |
cc* Define the TRPL volume |
80 |
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* Define the TPAS and TPAI volume |
81 |
* |
* |
82 |
NMED= MN2 |
NMED= MN2 |
83 |
CALL GSVOLU('TRPL','BOX ',NMED,TRPL, 3,IVOLU) |
CC CALL GSVOLU('TRPL','BOX ',NMED,TRPL, 3,IVOLU) |
84 |
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CALL GSVOLU('TPAS','BOX ',NMED,TPAS, 3,IVOLU) |
85 |
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NMED= MAL |
86 |
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CALL GSVOLU('TPAI','BOX ',NMED,TPAI, 3,IVOLU) |
87 |
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CC end ml. |
88 |
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**************** |
89 |
* |
* |
90 |
* Define the TRSL volume |
* Define the TRSL volume |
91 |
* |
* |
92 |
NMED= MN2 |
c ml: 26/11/04: |
93 |
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c NMED= MN2 |
94 |
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NMED=MSIT |
95 |
CALL GSVOLU('TRSL','BOX ',NMED,TRSL, 3,IVOLU) |
CALL GSVOLU('TRSL','BOX ',NMED,TRSL, 3,IVOLU) |
96 |
* |
* |
97 |
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* Define the THBP volume |
98 |
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* |
99 |
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NMED=MG10C |
100 |
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CALL GSVOLU('THBP','BOX ',NMED,THBP, 3,IVOLU) |
101 |
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C end ml. |
102 |
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* |
103 |
* Define the TSPA volume |
* Define the TSPA volume |
104 |
* |
* |
105 |
NMED= MSIT |
NMED= MSIT |
110 |
NMED= MCF |
NMED= MCF |
111 |
CALL GSVOLU('TRCP','BOX ',NMED,TRCP, 3,IVOLU) |
CALL GSVOLU('TRCP','BOX ',NMED,TRCP, 3,IVOLU) |
112 |
* |
* |
113 |
* Positioning volume TSPA into the mother TRSL |
* Define the TBAL volume |
114 |
* |
* |
115 |
N= 1 |
NMED= MAL |
116 |
X= 0. |
CALL GSVOLU('TBAL','BOX ',NMED,TBAL, 3,IVOLU) |
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Y= TRSL(2) - TSPA(2) |
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Z= 0. |
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CALL GSPOS('TSPA',N,'TRSL',X,Y,Z,0,'ONLY') |
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N= 2 |
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Y= Y - 2.*TSPA(2) |
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CALL GSPOS('TSPA',N,'TRSL',X,Y,Z,0,'ONLY') |
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117 |
* |
* |
118 |
* Positioning volume TRCP into the mother TRSL |
* Define the MGPA volume |
119 |
* |
* |
120 |
N= 1 |
NMED= MAL |
121 |
Z= 0. |
CALL GSVOLU('MGPA','BOX ',NMED,MGPA, 3,IVOLU) |
122 |
Y= 0. |
* |
123 |
X= -TRSL(1) + TRCP(1) |
* Define the TPGA volume |
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CALL GSPOS('TRCP',N,'TRSL',X,Y,Z,0,'ONLY') |
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N= 2 |
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X= -X |
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CALL GSPOS('TRCP',N,'TRSL',X,Y,Z,0,'ONLY') |
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124 |
* |
* |
125 |
* Positioning volume TRSL into the mother TRPL |
NMED= MN2 |
126 |
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CALL GSVOLU('TPGA','BOX ',NMED,TPGA, 3,IVOLU) |
127 |
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* |
128 |
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* Define the TPGI volume |
129 |
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* |
130 |
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NMED= MN2 |
131 |
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CALL GSVOLU('TPGI','BOX ',NMED,TPGI, 3,IVOLU) |
132 |
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* |
133 |
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* Define the TPGU volume |
134 |
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* |
135 |
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NMED= MN2 |
136 |
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CALL GSVOLU('TPGU','BOX ',NMED,TPGU, 3,IVOLU) |
137 |
* |
* |
138 |
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* Define the TPGD volume |
139 |
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* |
140 |
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NMED= MN2 |
141 |
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CALL GSVOLU('TPGD','BOX ',NMED,TPGD, 3,IVOLU) |
142 |
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143 |
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* |
144 |
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* Positioning volume TSPA into the mother TRSL |
145 |
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* |
146 |
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GLUEX=XGLUE-0.0005 |
147 |
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GLUEY=XGLUE |
148 |
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N= 1 |
149 |
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X= 0. |
150 |
Y= 0. |
Y= 0. |
151 |
Z= 0. |
Z= 0. |
152 |
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CALL GSPOS('TSPA',N,'TRSL',X,Y,Z,0,'ONLY') |
153 |
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C # N= 2 |
154 |
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C # C Y= Y - 2.*TSPA(2) |
155 |
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C # Y=-TRSL(2)/2 |
156 |
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C # CALL GSPOS('TSPA',N,'TRSL',X,Y,Z,0,'ONLY') |
157 |
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c ml: 26/11/04: |
158 |
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* Positioning volume TRCP into mother TPAS |
159 |
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C # Caf mod on 19 Jul 2005 all volumes are placed inside the TPAS one |
160 |
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C # Z=-TRPB(3)+0.11+TRCP(3) |
161 |
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C # Y=-TRPB(2)+1.5-0.225+TRCP(2) |
162 |
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CC end ml. |
163 |
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c Z=-TRPB(3)+2*TPAI(3)+TRCP(3) |
164 |
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Z=TRPB(3)-2*TPAI(3)-TRCP(3) |
165 |
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y=-TPAS(2)+TRCP(2) |
166 |
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C # end CAF mod |
167 |
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TPASSPACE=TPAS(1)-(3*TRSL(1)+4*TRCP(1)+3*GLUEX) |
168 |
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DO I=1,4 |
169 |
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CC ml 20/04/05: |
170 |
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CC X=-TRPL(1)+(2*I-1)*TRCP(1)+2*(I-1)*TRSL(1) |
171 |
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C # Caf mod on 19 Jul 2005 all volumes are placed inside the TPAS one |
172 |
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C # X=-TRPB(1)+2.29+(2*I-1)*TRCP(1)+2*(I-1)*TRSL(1) |
173 |
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c ml: 19/9/05: introducing the glue between TRCP and the silicon ladders. |
174 |
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c for now the glue is a space of nitrogen of 0.015 mm |
175 |
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c X=-TPAS(1)+(2*I-1)*TRCP(1)+2*(I-1)*TRSL(1) |
176 |
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C Ml. 15/12/05: introducing a space (along x) between the inner part of the |
177 |
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c aluminum frame and respectively the first and the last carbon fiber barrel. |
178 |
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c It is has been done increasing the dimension of TPAS along x: |
179 |
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C X=-TPAS(1)+2*(I-1)*XGLUE+(2*I-1)*TRCP(1)+2*(I-1)*TRSL(1) |
180 |
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X=-TPAS(1)+TPASSPACE+2*(I-1)*GLUEX+(2*I-1)*TRCP(1)+ |
181 |
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+ 2*(I-1)*TRSL(1) |
182 |
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CC end ml |
183 |
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CALL GSPOS('TRCP',I,'TPAS',X,Y,Z,0,'ONLY') |
184 |
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C # end CAF mod |
185 |
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ENDDO |
186 |
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cc ml 20/04/05: |
187 |
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* Positioning volume TRSL into the mother TPAS |
188 |
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C # Caf mod on 19 Jul 2005 all volumes are placed inside the TPAS one |
189 |
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C # Y=-TRPB(2)+1.5+2*THBP(2)+TRSL(2) |
190 |
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C Y=2.75 |
191 |
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CC Z= 0. |
192 |
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C Z=-0.005 |
193 |
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c Z=-TRPB(3)+2*TPAI(3)+TRCP(3) |
194 |
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Z=TRPB(3)-2*TPAI(3)-TRCP(3) |
195 |
DO I=1, NTRSL |
DO I=1, NTRSL |
196 |
X= -TRPL(1) + TRSL(1) +2.*(I-1)*TRSL(1) |
c ml: 20/9/05 introducing the glue between TRCP and the silicon ladders. |
197 |
CALL GSPOS('TRSL',I,'TRPL',X,Y,Z,0,'ONLY') |
c X=-TPAS(1)+2*(MOD(I-1,3)+1)*TRCP(1)+ |
198 |
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c + (2*(MOD(I-1,3)+1)-1)*TRSL(1) |
199 |
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X=-TPAS(1)+TPASSPACE+2*(MOD(I-1,3)+1)*TRCP(1)+ |
200 |
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+ (2*(MOD(I-1,3)+1)-1)*GLUEX+(2*(MOD(I-1,3)+1)-1)*TRSL(1) |
201 |
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IF(I.LE.3) THEN |
202 |
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C ml: 22/9/05: |
203 |
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c Y=TPAS(2)-TRSL(2) |
204 |
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Y=TPAS(2)-0.1485+0.0005-TRSL(2) |
205 |
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ELSE |
206 |
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C Y=TPAS(2)-3*TRSL(2) |
207 |
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Y=TPAS(2)-0.1485-GLUEY-3*TRSL(2) |
208 |
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ENDIF |
209 |
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CALL GSPOS('TRSL',I,'TPAS',X,Y,Z,0,'ONLY') |
210 |
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ENDDO |
211 |
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C # end CAF mod |
212 |
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********** |
213 |
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cc ml: 20/04/05 |
214 |
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* Positioning volume THBP into the mother TPAS |
215 |
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C # Caf mod on 19 Jul 2005 all volumes are placed inside the TPAS one |
216 |
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C # Y=-TRPB(2)+1.5+THBP(2) |
217 |
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C # cc Z= 0. |
218 |
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C # Z=-TRPB(3)+0.11+TRCP(3) |
219 |
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c ml: 22/9/05: |
220 |
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c Y=-TPAS(2)+THBP(2) |
221 |
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Y=-TPAS(2)+0.1485+THBP(2) |
222 |
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C Z=-0.005 |
223 |
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c Z=-TRPB(3)+2*TPAI(3)+TRCP(3) |
224 |
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Z=TRPB(3)-2*TPAI(3)-TRCP(3) |
225 |
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DO I=1, NTHBP |
226 |
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CC X= -TRPL(1) + 2*I*TRCP(1)+(2*I-1)*THBP(1) |
227 |
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C # X=-TRPB(1)+2.29+2*I*TRCP(1)+(2*I-1)*THBP(1) |
228 |
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c ml: 21/9/05 introducing the glue between the carbon barrel and the silicon |
229 |
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c ladders |
230 |
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c X=-TPAS(1)+2*I*TRCP(1)+(2*I-1)*THBP(1) |
231 |
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X=-TPAS(1)+TPASSPACE+2*I*TRCP(1)+(2*I-1)*THBP(1)+ |
232 |
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+ (2*(MOD(I-1,3)+1)-1)*GLUEX |
233 |
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CALL GSPOS('THBP',I,'TPAS',X,Y,Z,0,'ONLY') |
234 |
ENDDO |
ENDDO |
235 |
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c end ml. |
236 |
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cc ml: 20/04/05 |
237 |
* |
* |
238 |
* Positioning volume MGPI into the mother MGPL |
* Positioning volume TPAI into the mother TPAS |
239 |
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* |
240 |
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C # Mod By Caf on 19th Jul 2005 all volumes inside the TPAS |
241 |
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X=0 |
242 |
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Y=-TPAS(2)+TPAI(2) |
243 |
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c Z=-TPAS(3)+TPAI(3) |
244 |
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Z=TRPB(3)-TPAI(3) |
245 |
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C # X=-TRPB(1)+2.29+TPAI(1) |
246 |
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C # Y=-TRPB(2)+1.5+2.5+TPAI(2) |
247 |
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C # Z=-TRPB(3)+TPAI(3) |
248 |
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CALL GSPOS('TPAI',I,'TPAS',X,Y,Z,0,'ONLY') |
249 |
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C # end CAF mod |
250 |
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* |
251 |
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* Positioning volume TPAS into the mother TRPB |
252 |
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* |
253 |
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C # Mod By Caf on 15th Jul 2005 |
254 |
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X=0 |
255 |
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Y=-TRPB(2)+1.5+TPAS(2) |
256 |
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Z=0 |
257 |
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C # X=-TRPB(1)+2.29+TPAS(1) |
258 |
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C # Y=-TRPB(2)+1.5+TPAS(2) |
259 |
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C # Z=-TRPB(3)+0.11+2*TRCP(3)+TPAS(3) |
260 |
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CALL GSPOS('TPAS',I,'TRPB',X,Y,Z,0,'ONLY') |
261 |
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c end ml. |
262 |
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* |
263 |
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* Positioning volume MGPA into the mother MGPL |
264 |
* |
* |
265 |
N= 1 |
N= 1 |
266 |
X= 0. |
X= 0. |
267 |
Y= 0. |
Y= 0. |
268 |
Z= 0. |
Z= 0. |
269 |
CALL GSPOS('MGPI',N,'MGPL',X,Y,Z,0,'ONLY') |
CALL GSPOS('MGPA',N,'MGPL',X,Y,Z,0,'ONLY') |
270 |
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* |
271 |
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* Positioning volume TPGD into the mother MGFR |
272 |
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* |
273 |
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X=0. |
274 |
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Z=-MGFR(3)+TPGD(3) |
275 |
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Y=0. |
276 |
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CALL GSPOS('TPGD',N,'MGFR',X,Y,Z,0,'ONLY') |
277 |
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* |
278 |
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* Positioning volume TPGI into the mother MGFR under MGPL |
279 |
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* |
280 |
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N=1 |
281 |
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X=0. |
282 |
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Z=-MGFR(3)+2*TPGD(3)+TPGI(3) |
283 |
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Y=0. |
284 |
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CALL GSPOS('TPGI',N,'MGFR',X,Y,Z,0,'ONLY') |
285 |
* |
* |
286 |
* Positioning volume TRPL into the mother TRPB |
* Positioning volume MGPI into the mother MGPL |
287 |
* |
* |
288 |
N= 1 |
N= 1 |
289 |
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X= 0. |
290 |
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Y= 0. |
291 |
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CC ML 10/11/05: Positioning volume MGPI into the mother MGPA |
292 |
Z= 0. |
Z= 0. |
293 |
CALL GSPOS('TRPL',N,'TRPB',X,Y,Z,0,'ONLY') |
CALL GSPOS('MGPI',N,'MGPA',X,Y,Z,0,'ONLY') |
294 |
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C Z= -MGFR(3)+2*TPGD(3)+MGPI(3) |
295 |
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C CALL GSPOS('MGPI',N,'MGFR',X,Y,Z,0,'ONLY') |
296 |
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* |
297 |
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* Positioning volume MGPL into the mother MGFR |
298 |
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* |
299 |
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c ml: 10/11/05 |
300 |
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N=1 |
301 |
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c Z=-MGFR(3)+MGPL(3) |
302 |
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Z=-MGFR(3)+2*(TPGD(3)+TPGI(3))+MGPL(3) |
303 |
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CALL GSPOS('MGPL',N,'MGFR',X,Y,Z,0,'ONLY') |
304 |
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* |
305 |
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* Positioning volume TPGI into the mother MGFR above MGPL |
306 |
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* |
307 |
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N=2 |
308 |
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X=0. |
309 |
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Z=-MGFR(3)+2*(TPGD(3)+TPGI(3)+MGPL(3))+TPGI(3) |
310 |
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Y=0. |
311 |
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CALL GSPOS('TPGI',N,'MGFR',X,Y,Z,0,'ONLY') |
312 |
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* |
313 |
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* Positioning volume TPGA into the mother MGFR |
314 |
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* |
315 |
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C ML: 10/11/05 |
316 |
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N=1 |
317 |
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X=0. |
318 |
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Y=MGFR(2)-2*(MGFR(2)-TRPB(2))-TPGA(2) |
319 |
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C Z=-MGFR(3)+2*MGPL(3)+TPGA(3) |
320 |
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C Z=MGFR(3)-2*TPGU(3)-2*TRPB(3)-TPGA(3) |
321 |
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Z=-MGFR(3)+2*(TPGD(3)+TPGI(3)+MGPL(3)+TPGI(3))+TPGA(3) |
322 |
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C Y=-0.75 |
323 |
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CALL GSPOS('TPGA',N,'MGFR',X,Y,Z,0,'ONLY') |
324 |
* |
* |
325 |
* Positioning volumes TRPB & MGPL into the mother SPEB |
* Positioning volumes TRPB & MGPL into the mother SPEB |
326 |
* |
* |
327 |
N= 1 |
N= 1 |
328 |
X= 0. |
X= 0. |
329 |
Y= 0. |
C Y= SPEB(2) - TRPB(2) |
330 |
Z= SPEB(3) - TRPB(3) |
Y= -MGFR(2) + TRPB(2) |
331 |
CALL GSPOS('TRPB',N,'SPEB',X,Y,Z,0,'ONLY') |
C Z= SPEB(3) - TRPB(3) |
332 |
|
c Z=-MGFR(3)+2*MGPL(3)+2*TPGA(3)+TRPB(3) |
333 |
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C Z=MGFR(3)-2*TPGU(3)-TRPB(3) |
334 |
|
Z=-MGFR(3)+2*(TPGD(3)+TPGI(3)+MGPL(3)+TPGI(3)+TPGA(3))+TRPB(3) |
335 |
|
C CALL GSPOS('TRPB',N,'SPEB',X,Y,Z,0,'ONLY') |
336 |
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CALL GSPOS('TRPB',N,'MGFR',X,Y,Z,0,'ONLY') |
337 |
|
c CALL GSPOS('TRPB',N,'MGFR',X,Y,Z,9,'ONLY') |
338 |
|
Z=SPEB(3) |
339 |
DO I=1, 5 |
DO I=1, 5 |
340 |
Z= Z - TRPB(3) - MGPL(3) |
X= 0. |
341 |
|
Y= 0. |
342 |
|
C Z= Z - TRPB(3) - MGFR(3) |
343 |
|
Z=Z-MGFR(3) |
344 |
N= I |
N= I |
345 |
CALL GSPOS('MGPL',N,'SPEB',X,Y,Z,0,'ONLY') |
CALL GSPOS('MGFR',N,'SPEB',X,Y,Z,0,'ONLY') |
346 |
Z= Z - MGPL(3) - TRPB(3) |
C Y= SPEB(2) - TRPB(2) |
347 |
N= (I+1) |
C Z= Z - MGFR(3) - TRPB(3) |
348 |
CALL GSPOS('TRPB',N,'SPEB',X,Y,Z,0,'ONLY') |
C N= (I+1) |
349 |
|
C IF(I.EQ.5) THEN |
350 |
|
CC CALL GSPOS('TRPB',N,'SPEB',X,Y,Z,10,'ONLY') |
351 |
|
C CALL GSPOS('TRPB',N,'MGFR',X,Y,Z,10,'ONLY') |
352 |
|
C ELSE |
353 |
|
CC CALL GSPOS('TRPB',N,'SPEB',X,Y,Z,0,'ONLY') |
354 |
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C CALL GSPOS('TRPB',N,'MGFR',X,Y,Z,0,'ONLY') |
355 |
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C ENDIF |
356 |
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Z=Z-MGFR(3) |
357 |
ENDDO |
ENDDO |
358 |
|
N=2 |
359 |
|
X=0. |
360 |
|
Y=MGFR(2) - TRPB(2) |
361 |
|
Z=Z-TRPB(3) |
362 |
|
ZTRPB=Z |
363 |
|
c CALL GSPOS('TRPB',N,'SPEB',X,Y,Z,4,'ONLY') |
364 |
|
CALL GSPOS('TRPB',N,'SPEB',X,Y,Z,10,'ONLY') |
365 |
|
* |
366 |
|
* Positioning volume TBAL into the mother SPEB |
367 |
|
* |
368 |
|
DO I=1,2 |
369 |
|
C DTBAL is the distance along x of the volumes TBAL from the end of TRPB |
370 |
|
DTBAL=3.6 |
371 |
|
N=I |
372 |
|
IF(I.EQ.1) THEN |
373 |
|
X=TRPB(1)-3.6-TBAL(1) |
374 |
|
ELSE |
375 |
|
X=-(TRPB(1)-3.6-TBAL(1)) |
376 |
|
ENDIF |
377 |
|
Y=MGFR(2) - 2*TRPB(2)-TBAL(2) |
378 |
|
Z=ZTRPB |
379 |
|
CALL GSPOS('TBAL',N,'SPEB',X,Y,Z,0,'ONLY') |
380 |
|
ENDDO |
381 |
|
* |
382 |
|
* Positioning volume TPGU into the mother MGFR |
383 |
|
* |
384 |
|
X=0. |
385 |
|
C Z=MGFR(3)-TPGU(3) |
386 |
|
Z=-MGFR(3)+2*(TPGD(3)+TPGI(3)+MGPL(3)+TPGI(3)+TPGA(3)+TRPB(3))+ |
387 |
|
+ TPGU(3) |
388 |
|
Y=-MGFR(2)+TRPB(2) |
389 |
|
CALL GSPOS('TPGU',N,'MGFR',X,Y,Z,0,'ONLY') |
390 |
* |
* |
391 |
RETURN |
RETURN |
392 |
END |
END |